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71.
几种裸子植物胚乳愈伤组织的诱导 总被引:4,自引:0,他引:4
取裸子植物未成熟胚乳作为外植体,在改良MS、添加不同种类激素和不同浓度配比的培养基上.分别予以热激、光培养、暗培养和刻伤胚乳等多种处理进行培养.结果表明:刻伤胚乳和适时暗培养有利于愈伤组织发生;经过25~30d的培养,在ρ(NAA)=0.5~0.75mg/L、ρ(2,4-D)=0.2~0.5mg/L、蔗糖浓度5%的培养基上,油松、白皮松、青、华北落叶松以附加ρ(KT)1.0~2.0mg/L以及白、侧柏在BA与KT配合使用的培养基上,热激后暗培养,愈伤组织诱导频率可达86.4%. 相似文献
72.
目的合成碳氮结构空心管材料,用于稀土矿山开采中放射性钍离子的吸附去除,方法通过三聚氰胺和三聚氰酸超分子自组装,经水热碳化及高温热解,制备碳氮结构空心管材料.采用SEM、XRD等对材料进行表征.在不同热解温度和pH值下进行钍离子吸附实验,比较不同钍离子的初始浓度和吸附时间下吸附容量的差异.结果600℃时,材料形貌为均匀的中空管状结构;pH=3.5,热解温度为800℃时,材料最大吸附容量达到133.87 mg/g,吸附过程符合Langmuir等温吸附模型且遵从准二级动力学规律.结论碳氮结构空心管材料对钍离子具有良好的吸附效果,有望用于稀土开采过程中产生的放射性废钍离子的去除. 相似文献
73.
74.
Pressurized gas pipelines may be endangered by accidental or intentional activities causing excess ground vibrations leading to failure. Thus, many papers have been published on this issue, yet most of these efforts suffer from complexity and inability to ascertain that all engaged factors are taken into account. These factors are attributed, namely, to explosion source, explosion-ground interaction, energy transfer through the ground, ground-pipeline interaction, and response of the pipeline. The deterministic method developed previously by the author has derived useful prediction mathematical formulas that can be used to calculate, either the stand-off distance of purposefully used explosives, or the maximum quantity of explosives to be used at a given distance, or the equivalent stress of a pipeline induced by an explosive charge at a given standoff distance. The method can also be applied to accidental blast events in factories or other activities. Yet, the complex formulas developed are hard to be used in the field and a simpler approach is needed to facilitate and accelerate in-field estimations. Thus, a nomogram was prepared to make the safety estimations easy and fast and taking into account all engaged critical factors starting from the explosion source through the integrity of the structure. 相似文献
75.
The vibration of dip tube in multi-burner gasifier changes the stress at the connection, causing flange seal failures and high temperature gas erosions with heavy economic losses and industrial accidents. This work aims to reveal the dip tube vibration mechanism, with special focus on obtaining the effect of operational parameters on the fatigue damage and long-term stable operation of gasifiers. A three-dimensional numerical simulation of the water-scrubbing cooling chamber was conducted to obtain the excitation source in the flow field. Then a FSI (fluid-structure interaction) transient dynamics simulation was carried out to investigate the vibration characteristics. Two major flow forms were found: a vertical annular flow near the dip tube outlet in the water-scrubbing cooling chamber; and a gas-liquid coupled flow caused by the syngas entrained the liquid. These two unstable multiphase flow forms exerted an energy excitation on the dip tube, resulting in a self-excited flutter. The dip tube vibration was similar to the first mode of a cantilever beam. The peak frequency was less affected by the initial liquid level and the syngas stream inlet velocity, which was close to its own first natural frequency. Note that, the alternating load generated by vibration may cause fatigue damage, which needs to be specifically considered in the design and manufacturing process of opposed multi-burner gasifier. 相似文献
76.
The occurrence of leakage in large tank farms or oil deposits can lead to fire or explosion accidents. Coupling effects of fire and explosion loadings can cause considerably more damage to adjacent tanks or buildings than either loading individually does. In this study, the combined loadings of the explosion shock wave and heat radiation from a pool fire on a neighboring empty fixed-roof tank were numerically investigated. The effects of the explosion shock wave intensity and relative height of the explosion center [the ratio of the height of the explosion center to the height of the tank (hr)] were analyzed. The results indicate that tanks damaged by explosion shock waves have decreased fire resistance and critical buckling temperature. Moreover, the thermal buckling deformation of the predamaged tank largely depends on the explosion shock wave. With an increase in the explosion shock wave intensity or a decrease in hr, the explosion shock wave has greater influence on the fire resistance of the tank, and the critical buckling temperature decreases. This paper can provide an understanding of the dynamics of a tank under explosion shock wave loading, and of the critical failure criterion and failure modes of a target tank under the coupled loading of the explosion shock wave and an adjacent pool fire. 相似文献
77.
目的提高振动台冲击响应谱试验模拟能力。方法分析影响振动台冲击响应谱模拟能力的原因,提出通过改变连接特性提高振动台冲击响应谱模拟能力的方法,并对该方法进行理论分析和试验验证。结果利用具有谐振效应的台面能够将160 k N振动台冲击响应谱量级由原来的1000g提高至2000g,并能够实现负载情况下1600g的冲击响应谱试验,提高了振动台冲击响应谱模拟能力。结论通过改变连接特性可以提高振动台冲击响应谱模拟能力,同时应尽量避免使用振动试验夹具进行冲击试验,针对产品试验要求设计冲击试验夹具,能够获得更理想的冲击试验效果。 相似文献
78.
Cf/SiC 复合材料表面 HfO2涂层的制备及其抗热冲击性能研究 总被引:2,自引:2,他引:0
目的研究等离子喷涂条件下Cf/SiC复合材料表面HfO_2涂层的物相、显微组织及其抗热冲击性能。方法通过水热合成和喷雾造粒制备出HfO_2粉体,并利用等离子喷涂在Cf/SiC复合材料表面制备HfO_2涂层,研究涂层的物相、显微组织和抗热冲击性能。结果水热合成的纳米HfO_2为单斜相结构,颗粒的平均粒径为10~15nm;等离子喷涂制备的HfO_2涂层组织中存在微裂纹和孔隙,涂层为单斜相结构,且经1350℃热处理后涂层的相结构未发生改变。等离子喷涂的HfO_2涂层与Cf/SiC复合材料基体结合良好,未观察到涂层、基体间界面分离的现象。经1350℃、50周次的空冷热冲击试验后,涂层未发生破坏失效;在1350℃水冷热冲击条件下,热循环20次时涂层表面出现剥落,27次时脱落面积50%。结论通过等离子喷涂制备的HfO_2涂层与Cf/SiC复合材料基体结合良好,涂层能够抵御1350℃空冷、50周次热冲击,且未发生破坏失效,涂层的1350℃水冷热循环寿命达27次。 相似文献
79.
80.
基于故障树分析法研究变电站检修触电事故防控 总被引:1,自引:0,他引:1
贾杰 《安全.健康和环境》2011,11(6):34-36
对变电站检修工作人员触电事故进行了故障树分析,通过定性分析,得出最小割集和结构重要度,并提出变电站检修触电事故的预防控制措施。 相似文献